6533b858fe1ef96bd12b6ceb
RESEARCH PRODUCT
Guano-Derived Nutrient Subsidies Drive Food Web Structure in Coastal Ponds.
Antonio MazzolaGeraldina SignaSalvatrice Vizzinisubject
0106 biological sciencesPhysiologyMarine and Aquatic Scienceslcsh:Medicine01 natural sciencesCharadriiformesFood chainIsotopescoastal pondsFood Web StructureMedicine and Health Scienceslcsh:ScienceTrophic levelMultidisciplinaryEcologyfood webEcologyConsumerFishesFood webSeabirdsGullsCommunity EcologyItalyBenthic zoneVertebratesGuanoSeasonsResearch ArticleFood Chainguano; food web; benthos; mixing model; isotope; coastal pondsbentho010603 evolutionary biologyBirdsAnimalsEcosystemguanoPondsisotopeEcosystemNutrition010604 marine biology & hydrobiologyEcology and Environmental Sciencesfungilcsh:RFood ConsumptionOrganismsDetritivoreBiology and Life SciencesNutrientsBodies of WaterModels Theoreticalmixing modelInvertebratesDietFisheryFoodEarth SciencesEnvironmental sciencelcsh:QPhysiological Processesdescription
A stable isotope study was carried out seasonally in three coastal ponds (Marinello system, Italy) affected by different gull guano input to investigate the effect of nutrient subsidies on food web structure and dynamics. A marked 15N enrichment occurred in the pond receiving the highest guano input, indicating that gull-derived fertilization (guanotrophication) had a strong localised effect and flowed across trophic levels. The main food web response to guanotrophication was an overall erosion of the benthic pathway in favour of the planktonic. Subsidized primary consumers, mostly deposit feeders, switched their diet according to organic matter source availability. Secondary consumers and, in particular, fish from the guanotrophic pond, acted as couplers of planktonic and benthic pathways and showed an omnivorous trophic behaviour. Food web structure showed substantial variability among ponds and a marked seasonality in the subsidized one: an overall simplification was evident only in summer when guano input maximises its trophic effects, while higher trophic diversity and complexity resulted when guano input was low to moderate.
year | journal | country | edition | language |
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2016-03-08 | PLoS ONE |